Title :
Structure and Magnetic Properties of
Prepared by
Author :
Verma, Shalini ; Sharma, Parmanand ; Pandey, O.P. ; Paesano, Andrea ; An-Cheng Sun
Author_Institution :
Sch. of Phys. & Mater. Sci., Thapar Univ., Patiala, India
Abstract :
M-type Barium hexaferrite (BaFe12O19) with substitution of Ba2+ by rare earth metal La3+ were prepared by solid state synthesis method from as-prepared powder of barium monoferrite (Ba1-xLaxFe2O4) (x=0.0, 0.1 and 0.2). The structural and magnetic properties of Ba1-xLaxFe12O19 were investigated by X-ray diffraction (XRD), vibrating sample magnetometer (VSM) and Mössbauer spectroscopy. The refined XRD patterns suggests the formation of single phase hexaferrite. With increased La substitution (x), the saturation magnetization increased and reached maximum at x=0.1 and decreased at x=0.2, without any noticeable change in coercivity. Fitted Mössbauer spectra of Ba1-xLaxFe12O19 showed increase in hyperfine field and a transition from Fe3+ ion to Fe2+ ion at 2b site. The present work demonstrates a new methodology for two stage substitution.
Keywords :
Mossbauer effect; X-ray diffraction; barium compounds; coercive force; ferrites; hyperfine interactions; lanthanum compounds; Ba1-xLaxFe12O19; Mossbauer spectroscopy; VSM; X-ray diffraction; XRD; barium hexaferrite; barium monoferrite; coercivity; hyperfine field; magnetic properties; powder; saturation magnetization; solid state synthesis method; structural properties; vibrating sample magnetometry; Barium; Coercive force; Iron; Magnetic properties; Magnetometers; Saturation magnetization; X-ray scattering; Barium hexaferrite; barium monoferrite; magnetic properties;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2013.2278373